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电子断层重构技术在玻璃态样本中的应用。

Montage electron tomography of vitrified specimens.

机构信息

Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA 91125, USA.

Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

J Struct Biol. 2022 Jun;214(2):107860. doi: 10.1016/j.jsb.2022.107860. Epub 2022 Apr 26.

Abstract

Cryo-electron tomography provides detailed views of macromolecules in situ. However, imaging a large field of view to provide more cellular context requires reducing magnification during data collection, which in turn restricts the resolution. To circumvent this trade-off between field of view and resolution, we have developed a montage data collection scheme that uniformly distributes the dose throughout the specimen. In this approach, sets of slightly overlapping circular tiles are collected at high magnification and stitched to form a composite projection image at each tilt angle. These montage tilt-series are then reconstructed into massive tomograms with a small pixel size but a large field of view. For proof-of-principle, we applied this method to the thin edge of HeLa cells. Thon rings to better than 10 Å were detected in the montaged tilt-series, and diverse cellular features were observed in the resulting tomograms. These results indicate that the additional dose required by this technique is not prohibitive to performing structural analysis to intermediate resolution across a large field of view. We anticipate that montage tomography will prove particularly useful for lamellae, increase the likelihood of imaging rare cellular events, and facilitate visual proteomics.

摘要

冷冻电子断层扫描提供了在原位下对大分子的详细观察。然而,为了提供更多的细胞背景,需要在数据收集过程中降低放大倍数来扩大视场,这反过来又限制了分辨率。为了避免视场和分辨率之间的这种权衡取舍,我们开发了一种拼贴数据采集方案,该方案可以在整个样本中均匀地分配剂量。在这种方法中,以高放大倍数收集一组略微重叠的圆形瓷砖,并将它们拼接在一起,以形成每个倾斜角度的复合投影图像。然后,将这些拼贴倾斜系列重建为具有小像素尺寸但大视场的大量断层扫描。作为原理验证,我们将该方法应用于 HeLa 细胞的薄边缘。在拼接倾斜系列中检测到了优于 10Å 的明环,并且在得到的断层扫描中观察到了不同的细胞特征。这些结果表明,该技术所需的额外剂量不会妨碍在大视场范围内进行中间分辨率的结构分析。我们预计,拼贴断层扫描将特别有助于对薄片进行成像,增加成像罕见细胞事件的可能性,并有助于可视化蛋白质组学。

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Montage electron tomography of vitrified specimens.电子断层重构技术在玻璃态样本中的应用。
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